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Fundamentals of Magneto-Electro-Mechanical Couplings: Continuum Formulations and Invariant Requirements

机译:磁力机电联轴器的基础:连续式配方和不变的要求

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Couplings of magnetic and electric fields in materials could allow for promising applications in medical and information technology. In this contribution, we recapitulate well-known aspects of magneto-electro-mechanical properties and their couplings. At first, we echo basic aspects of electricity and magnetism and Maxwell's equations. Secondly, we summarize the governing equations for electrostatics and magnetostatics, point out the properties of physical fields across internal surfaces, and discuss the work-energy theorem of electrodynamics, the so-called Poynting's theorem. Thirdly, we will discuss some fundamental concepts of magneto-electro-mechanical couplings in matter. Here, we will formulate thermodynamic potentials depending on different basic variables in order to be flexible with a view to different modeling aspects. Afterwards, we discuss aspects of form-invariance of physical laws under coordinate transformations: Lorentz invariance, Galilean transformation and time reversal. Here, we focus on piezoelectric as well as on magnetic symmetry groups and give remarks on classical invariant theory suitable for coordinate-invariant modeling of thermodynamical potentials.
机译:材料中的磁场和电场的联轴器可以允许在医疗和信息技术方面进行有前途的应用。在这一贡献中,我们重新承载了磁力机械性能及其联轴器的众所周知的方面。首先,我们回应电力和磁力和麦克斯韦方程的基本方面。其次,我们总结了静电和磁静态的控制方程,指出了内部表面的物理场的特性,并讨论了电动力学的工作能定理,所谓的Poynting定理。第三,我们将在物质上讨论磁机电联轴器的一些基本概念。在这里,我们将根据不同的基本变量来配制热力学潜力,以便灵活地以不同的建模方面。之后,我们讨论了协调转换下物理法律的形式不变性的方面:Lorentz Invariance,Glilane转型和时间逆转。在这里,我们专注于压电和磁性对称组,并赋予适合于热力学潜力的坐标 - 不变建模的古典不变理论的评论。

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